Claims
- 1. An actuator for a valve, said valve including a valve body having a valve member disposed in said valve body with a first gear attached to said valve member, said actuator comprising:
- a second gear means for drivingly engaging said first gear to operate said valve;
- moving means for selectively moving said second gear means into and out of engagement with said first gear;
- power means for driving said second gear means;
- support member means constructed for attachment to said valve body;
- frame means, rotatingly connected to said support member means so that said valve body may rotate relative to said frame means, said frame means also being attached to said moving means; and
- locking means for selectively locking said frame means to said support member means prior to the operation of said valve to prevent said support member means from rotating relative to said frame means, said locking means including biasing means for biasing said locking means toward an unlocked position.
- 2. The actuator of claim 1, wherein said locking means further includes:
- a locking ring, attached to said support member means, said locking ring having a plurality of holes disposed therein, said holes being located on a circle concentrically disposed about an axis of rotation of said support member means; and
- plunger means, connected to said frame means, for selectively engaging and disengaging one of said holes in said locking ring; and
- wherein said biasing means is further characterized as being a means for biasing said plunger means toward a disengaged position.
- 3. The actuator of claim 2, further comprising control means, operatively associated with said moving means and said plunger means, for causing said plunger means to be engaged with said locking ring at the same time at which said second gear means is engaged with said first gear.
- 4. The actuator of claim 3, wherein:
- said moving means includes a first hydraulic cylinder connected between said frame means and said second gear means;
- said plunger means includes a second hydraulic cylinder operatively associated with said frame means, said second hydraulic cylinder being characterized as a means for overcoming said bias of said biasing means; and
- said control means includes a parallel hydraulic connection from a source of hydraulic fluid under pressure to said first and second hydraulic cylinders.
- 5. The actuator of claim 2, wherein:
- said biasing means includes a resilient spring so arranged and constructed that when said spring is extended said plunger means is disengaged from said locking ring and when said plunger means is engaged with said locking ring, said spring is compressed.
- 6. The actuator of claim 2, wherein said plunger means comprises:
- a plunger guide cylinder attached to said frame means; and
- a cylindrical plunger slidingly received in said guide cylinder; and
- wherein said biasing means is located between said plunger guide cylinder and said cylindrical plunger.
- 7. The actuator of claim 6, wherein:
- said plunger guide cylinder includes a first inner cylindrical bore, a second inner cylindrical bore of greater diameter than said first bore, and an annular shoulder connecting said first and second bores, said annular shoulder facing away from said locking ring;
- said cylindrical plunger includes a first outer cylindrical surface slidingly received in said first bore of said plunger guide cylinder, and a shoulder at an end of said first outer cylindrical surface furthest from said locking ring, said shoulder of said cylindrical plunger facing toward said locking ring; and
- said biasing means is connected between said annular shoulder of said plunger guide cylinder and said shoulder of said cylindrical plunger.
- 8. The actuator of claim 7, wherein:
- said biasing means includes a resilient spring so arranged and constructed that when said spring is extended said plunger means is disengaged from said locking ring and when said plunger means is engaged with said locking ring, said spring is compressed.
- 9. The actuator of claim 8, wherein:
- said resilient spring is a coil spring disposed around said outer cylindrical surface of said cylindrical plunger, a first end of said coil spring engaging said annular shoulder of said plunger guide cylinder, and a second end of said coil spring engaging said shoulder of said cylindrical plunger.
- 10. The actuator of claim 7, wherein:
- said cylindrical plunger includes a second outer cylindrical surface slidingly received in said second inner cylindrical bore of said plunger guide cylinder, said second outer cylindrical surface being connected to said first outer cylindrical surface by said shoulder of said cylindrical plunger.
- 11. The actuator of claim 1, wherein:
- said biasing means includes a resilient spring.
- 12. The actuator of claim 11, wherein:
- said resilient spring is a coil spring and is so arranged and constructed that when said spring is extended said locking means is unlocked and when said locking means is locked said coil spring is compressed.
- 13. In combination with an actuator for a valve, said valve including a valve body having a valve member disposed in said valve body with a first gear attached to said valve member, said actuator being of the type including:
- a second gear means for drivingly engaging said first gear to operate said valve;
- moving means for selectively moving said second gear means into and out of engagement with said first gear;
- power means for driving said second gear means;
- support member means constructed for attachment to said valve body;
- frame means, rotatingly connected to said support member means so that said valve body may rotate relative to said frame means, said frame means also being attached to said moving means; and
- locking means for selectively locking said frame means to said support member means prior to the operation of said valve to prevent said support member means from rotating relative to said frame means;
- the improvement which comprises said locking means including biasing means for biasing said locking means toward an unlocked position.
- 14. The actuator of claim 13, wherein:
- said biasing means includes a resilient spring.
- 15. The actuator of claim 14, wherein:
- said resilient spring is a coil spring and is so arranged and constructed that when said spring is extended said locking means is unlocked and when said locking means is locked said coil spring is compressed.
- 16. In combination with an actuator for a valve, said valve including a valve body having a valve member disposed in said valve body with a first gear attached to said valve member, said actuator being of the type including:
- a second gear means for drivingly engaging said first gear to operate said valve;
- moving means for selectively moving said second gear means into and out of engagement with said first gear;
- power means for driving said second gear means;
- support member means constructed for attachment said valve body;
- frame means, rotatingly connected to said support member means so that said valve body may rotate relative to said frame means, said frame means also being attached to said moving means; and
- locking means for selectively locking said frame means to said support member means to prevent said support member means from rotating relative to said frame means, said locking means including:
- a locking ring, attached to said support member means, said locking ring having a plurality of holes disposed therein, said holes being located on a circle concentrically disposed about an axis of rotation of said support member means; and
- plunger means, connected to said frame means, for selectively engaging and disengaging one of said holes in said locking ring;
- the improvement which comprises said locking means including biasing means for biasing said plunger toward a disengaged position.
- 17. The actuator of claim 16, wherein:
- said biasing means includes a resilient spring so arranged and constructed that when said spring is extended said plunger means is disengaged from said locking ring and when said plunger means is engaged with said locking ring, said spring is compressed.
- 18. In combination with an actuator for a valve, said valve including a valve body having a valve member disposed in said valve body with a first gear attached to said valve member, said actuator being of the type including:
- a second gear means for drivingly engaging said first gear to operate said valve;
- moving means for selectively moving said second gear means into and out of engagement with said first gear;
- power means for driving said second gear means;
- support member means constructed for attachment to said valve body;
- frame means, rotatingly connected to said support member means so that said valve body may rotate relative to said frame means, said frame means also being attached to said moving means; and
- locking means for selectively locking said frame means to said support member means to prevent said support member means from rotating relative to said frame means, said locking means including:
- a locking ring, attached to said support member means, said locking ring having a plurality of holes disposed therein, said holes being located on a circle concentrically disposed about an axis of rotation of said support member means; and
- plunger means, connected to said frame means, for selectively engaging and disengaging one of said holes in said locking ring, said plunger means including a plunger guide cylinder attached to said frame means and a cylindrical plunger slidingly received in said guide cylinder;
- the improvement which comprises:
- said plunger guide cylinder including a first inner cylindrical bore, a second inner cylindrical bore of greater diameter than said first bore, and an annular shoulder connecting said first and second bores, said annular shoulder facing away from said locking ring;
- said cylindrical plunger including a first outer cylindrical surface slidingly received in said first bore of said plunger guide cylinder, and a shoulder at an end of said first outer cylindrical surface furthest from said locking ring, said shoulder of said cylindrical plunger facing toward said locking ring; and
- biasing means, connected between said annular shoulder of said plunger guide cylinder and said shoulder of said cylindrical plunger, for biasing said plunger means toward a disengaged position.
- 19. The actuator of claim 18, wherein:
- said biasing means includes a resilient spring so arranged and constructed that when said spring is extended said plunger means is disengaged from said locking ring and when said plunger means is engaged with said locking ring, said spring is compressed.
- 20. The actuator of claim 19, wherein:
- said resilient spring is a coil spring disposed around said outer cylindrical surface of said cylindrical plunger, a first end of said coil spring engaging said annular shoulder of said plunger guide cylinder, and a second end of said coil spring engaging said shoulder of said cylindrical plunger.
- 21. The actuator of claim 18, wherein:
- said cylindrical plunger includes a second outer cylindrical surface slidingly received in said second inner cylindrical bore of said plunger guide cylinder, said second outer cylindrical surface being connected to said first outer cylindrical surface by said shoulder of said cylindrical plunger.
RELATED APPLICATIONS
This application is a continuation-in-part of our earlier U.S. patent application Ser. No. 026,340 filed Apr. 2, 1979 for POWER ACTUATED VALVE.
US Referenced Citations (8)
Non-Patent Literature Citations (1)
Entry |
"Oil Field Power Tools", International Tool Company, Inc. pp. 1-7, Model A-6B-Kelly Spinner. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
26340 |
Apr 1979 |
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